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Coupled atmospheric and land surface dynamics over southeast Australia: A review, analysis and identification of future research priorities

机译:澳大利亚东南部的大气和陆地表面动力学耦合:审查,分析和确定未来的研究重点

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摘要

The southeastern Australian climate and climate variability is driven primarily by large-scale climate dynamics. How these dynamics translate into local effects is influenced by the nature of the landscape, the vegetation, soil moisture, fire, snow, irrigation and orography. This local land-atmosphere coupling can enhance or moderate the large-scale dynamics and have significant influences locally and regionally. This paper reviews the state of knowledge of the coupled land-atmosphere dynamics over southeast Australia and identifies the challenges for future research. Relevant processes are investigated and if possible their importance to regional climate is identified. Many coupled land-atmosphere dynamic processes, identified as important in the Northern Hemisphere studies, remain to be studied in southeast Australia. This represents an important priority for Australian research because this will establish their role in future changes in regional climate over Australia. However, this also represents a significant international priority because the very high natural climate variability in the region provides a laboratory to examine how coupled land-atmosphere dynamic processes may change in other regions if global warming increases the range of natural variability.
机译:澳大利亚东南部的气候和气候多变性主要是由大规模的气候动力学驱动的。这些动态如何转化为局部影响受景观性质,植被,土壤湿度,火,雪,灌溉和地形的影响。这种本地陆地-大气耦合可以增强或缓和大规模动力,并在本地和区域产生重大影响。本文回顾了澳大利亚东南部陆地与大气动力学耦合的知识状态,并指出了未来研究的挑战。研究了相关过程,并在可能的情况下确定了它们对区域气候的重要性。在北半球研究中被认为很重要的许多耦合的陆地-大气动力学过程,还有待在澳大利亚东南部进行研究。这是澳大利亚研究的重要优先事项,因为这将确定他们在澳大利亚未来区域气候变化中的作用。但是,这也代表了一项重要的国际优先事项,因为该地区极高的自然气候变异性提供了一个实验室,以研究如果全球变暖增加了自然变异性的范围,其他地区的陆地-大气动态过程可能如何发生变化。

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